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    1. Medicin
    2. Kirurgi
    3. Ortopedi och frakturer

    PEEK Biomaterials Handbook

    AvSteven M. Kurtz

    Inbunden, Engelska, 2011

    Del i serien Plastics Design Library

    1 863 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    PEEK biomaterials are currently used in thousands of spinal fusion patients around the world every year. Durability, biocompatibility and excellent resistance to aggressive sterilization procedures make PEEK a polymer of choice, replacing metal in orthopedic implants, from spinal implants and hip replacements to finger joints and dental implants.

    This Handbook brings together experts in many different facets related to PEEK clinical performance as well as in the areas of materials science, tribology, and biology to provide a complete reference for specialists in the field of plastics, biomaterials, medical device design and surgical applications.

    Steven Kurtz, author of the well respected UHMWPE Biomaterials Handbook and Director of the Implant Research Center at Drexel University, has developed a one-stop reference covering the processing and blending of PEEK, its properties and biotribology, and the expanding range of medical implants using PEEK: spinal implants, hip and knee replacement, etc.



    • Covering materials science, tribology and applications
    • Provides a complete reference for specialists in the field of plastics, biomaterials, biomedical engineering and medical device design and surgical applications

    Produktinformation

    • Utgivningsdatum:2011-11-24
    • Mått:216 x 276 x undefined mm
    • Vikt:1 130 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Plastics Design Library
    • Antal sidor:306
    • Förlag:Elsevier Science
    • ISBN:9781437744637

    Utforska kategorier

    • Ortopedi och frakturer inom Medicin
    • Biomedicinsk teknik inom Medicin
    • Tillverkningsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Kurtz has been researching ultra-high molecular weight polyehtylene(UHMWPE) for use in orthopedics for over 10 years. He has published dozens of papers and several book chapters related to UHMWPE used in joint replacement. He has pioneered the development of new test methods for the material in orthopedics. Dr. Kurtz has authored national and international standards for medical upgrade UHMWPE.As a principle engineer at Exponent, an international engineering and scientific consulting company, his research on UHMWPE is supported by several major orthopedic manufacturers. He has funding from the National Institutes for Health to stdy UHMWPE changes after implanatation in the body, as well as to develop new computer-based tools to predict the performance of new UHMWPE materials.Dr. Kurtz is the Director of an orthopedic implant retrieval program in Philadelphia which is affiliated with Drexel University and Thomas Jefferson University. He teaches classes on the performance of orthopedic polymers (including UHMWPE) at Drexel, Temple, and Princeton Universities.

    Innehållsförteckning

    • PART 1: PEEK Foundations, properties and behavior1. Introduction to PAEK Biomaterials2. Processing of PEEK3. Blending and PEEK Composites4. Morphology and Crystalline Architecture of Polyaryletherketones5. Static Mechanical Behavior of PEEK6. Fatigue and Fracture Behavior of PEEK7. Chemical and Radiation Stability of PEEK: Implications for Device SterilizationPART 2: Bioactive PEEK Materials8. Biocompatibility of PEEK9. Microbial Properties of PEEK Biomaterials10. Thermal Plasma Spray Deposition of Titanium and Hydroxyapatite on PEEK Implants 11. Plasma Surface Treatment of PEEK12. HA/PEEK Biocomposites13. Porosity in PEEK MarcusPART 3: PEEK Applications in Medical Devices14. Development and Clinical Performance of PEEK Intervertebral Cages15. PEEK Biomaterials for Posterior Dynamic Stabilization of the Spine16. PEEK Research for Trauma and Arthroscopy Applications17. Development and Clinical Performance of PEEK Composite Hip Stems18. Total Joint Arthroplasty Bearing Surfaces19. Tribology of PEEK Biomaterials for Artificial Discs20. FDA Regulation of PEEK Implants